BrqRV_EB1: BrqRV EB1 is a machine-mode (M-mode) only, 32-bit CPU small core which supports RISC-V’s integer (I), compressed instruction (C), multiplication and division (M), and instruction-fetch fence, and CSR extensions.

Clone this repo:


  1. d5be50c Updating the shuttle_url value in `info.yaml` file. by Tim 'mithro' Ansell · 1 year, 7 months ago main
  2. 679e847 final gds & signoff results by Jeff DiCorpo · 2 years, 7 months ago
  3. ed4f100 final gds oasis by Jeff DiCorpo · 2 years, 7 months ago
  4. 726ca0d final gds & signoff results by Jeff DiCorpo · 2 years, 7 months ago
  5. 0ec60e8 final gds oasis by Jeff DiCorpo · 2 years, 7 months ago

License UPRJ_CI Caravel Build

SPDX-FileCopyrightText: 2020 Efabless Corporation Licensed under the Apache License, Version 2.0 (the “License”); you may not use this file except in compliance with the License. You may obtain a copy of the License at Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an “AS IS” BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License. SPDX-License-Identifier: Apache-2.0

BrqRV EB1 RISC-V Core 1.0 from MERL

This repository contains the BrqRV EB1 Core design RTL. BrqRV EB1 Is A Machine-Mode (M-Mode) Only, 32-Bit Cpu Small Core Which Supports Risc-V’s Integer (I), Compressed Instruction (C), Multiplication And Division (M), And Instruction-Fetch Fence, And Csr Extensions. The Core Contains A 4-Stage, Scalar, In-Order Pipeline

Block Diagram

Directory Structure

├── verlog                          #   User verilog Directory
│   ├── rtl                         #   RTL
│   ├── dv                          #   Design Verification
│   ├── gl                          #   Gate Level Netlis

The BrqRV_EB1 Source Code is avaialable here

├── verlog                               #   User verilog Directory
│   ├── rtl                              #   RTL
|       ├── user_project_wrapper.v       #   User Project Wrapper source file
|       ├── user_proj_example.v          #   User Project Example source file
|       ├── Brqrv_EB1                    #   BrqRV_EB1 folder
|           ├── Brqrv_EB1.v                                     #   BrqRV_EB1 source file
|           ├── sky130_sram_1kbyte_1rw1r_32x256_8.v             #   1KB sram

The Design Verification Testbench is available here

├── verlog                               #   User verilog Directory
│   ├── dv                               #   Design Verification
│       ├── BrqRV_EB1                    #   Design Test Directory
│       ├── hex                          #   Hex files folder
│       ├── asm                          #   Assmebly files folder

The synthesized netlist is present here:

├── verlog                               #   User verilog Directory
│   ├── gl                               #   Gate Level Netlis
│       ├── user_project_wrapper.v       #   User Project Wrapper Netlist
│       ├── user_proj_example.v          #   User Project Example Netlist

The hardened macros are placed here:

├── def                                 #    def Directory
│   ├── user_project_wrapper.def        #    User Project Wrapper def file

├── lef                                 #    lef Directory
│   ├── user_project_wrapper.lef        #    User Project Wrapper lef file
│   ├── user_proj_example.lef           #    User Project Example lef file

├── gds                                 #    gds Directory
│   ├── user_project_wrapper.gdz.gz     #    User Project Wrapper gds
│   ├── user_proj_example.gdz.gz        #    User Project Example gds

Testing of Design

Go to verilog/dv/BrqRV_EB1/ directory

  1. Set the GCC_PATH environment variable.
  2. Set the PDK_PATH environment variable.
  3. Copy the given program hex file into uart.hex.
  4. run the make commad for RTL simulation
  5. run the SIM=GL make command for netlist simulation

Note: Dont forget to add 00000FFF instruction in the end of the uart.hex to stop the uart transmission if you are using your own codes.